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首页> 外文期刊>The Journal of Neuroscience: The Official Journal of the Society for Neuroscience >Theta Oscillations in Visual Cortex Emerge with Experience to Convey Expected Reward Time and Experienced Reward Rate
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Theta Oscillations in Visual Cortex Emerge with Experience to Convey Expected Reward Time and Experienced Reward Rate

机译:Visual Cortex中的Theta振荡结合经验来传达预期的奖励时间和经验的奖励率

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摘要

The primary visual cortex (V1) is widely regarded as faithfully conveying the physical properties of visual stimuli. Thus, experience-induced changes in V1 are often interpreted as improving visual perception (i.e., perceptual learning). Here we describe how, with experience, cue-evoked oscillations emerge in V1 to convey expected reward time as well as to relate experienced reward rate. We show, in chronic multisite local field potential recordings from rat V1, that repeated presentation of visual cues induces the emergence of visually evoked oscillatory activity. Early in training, the visually evoked oscillations relate to the physical parameters of the stimuli. However, with training, the oscillations evolve to relate the time in which those stimuli foretell expected reward. Moreover, the oscillation prevalence reflects the reward rate recently experienced by the animal. Thus, training induces experience-dependent changes in V1 activity that relate to what those stimuli have come to signify behaviorally: when to expect future reward and at what rate.
机译:初级视觉皮层(V1)被广泛视为忠实地传达了视觉刺激的物理特性。因此,经验引起的V1变化通常被解释为改善了视觉感知(即知觉学习)。在这里,我们描述了如何根据经验在V1中出现提示诱发的振荡,以传达预期的奖励时间以及关联经验的奖励率。我们显示,从大鼠V1的慢性多站点局部场电位记录中,视觉提示的重复呈现诱导了视觉诱发的振荡活动的出现。在训练的早期,视觉诱发的振动与刺激的物理参数有关。但是,通过训练,振荡会演变为与这些刺激预示预期回报的时间相关。而且,振荡流行反映了动物最近经历的奖励率。因此,训练会导致V1活动中与经验有关的变化,这些变化与这些刺激已在行为上表示的含义有关:何时期望获得将来的回报以及以何种速度获得回报。

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